State Key Laboratory of Soil and Sustainable Agriculture, Institute of Soil Science, Chinese Academy of Sciences, Nanjing, 210008, China.
University of Chinese Academy of Sciences, Beijing, 100049, China.
Plant J. 2022 Jul;111(2):529-545. doi: 10.1111/tpj.15837. Epub 2022 Jun 13.
Modification of the O-acetylation level of xyloglucan (XyG) appears to affect aluminum (Al) sensitivity in Arabidopsis by modulating its binding capacity to Al. However, the transcriptional regulation of this process remains largely unknown. In our previous studies, we found that the expression of TRICHOME BIREFRINGENCE-LIKE27 (TBL27), which is responsible for the O-acetylation of XyG, was downregulated under Al stress. In the present study, we showed that the expression of an R2R3-type transcription factor-encoding gene, MYB103, was also inhibited by Al exposure and exhibited a co-expression pattern with TBL27 in roots and siliques, suggesting a potential link between MYB103 and TBL27. The loss of function of MYB103 resulted in increased Al sensitivity, as indicated by more inhibited root growth and elevated root Al content compared with the wild type. Moreover, we also detected increased Al accumulation in the root cell wall and the hemicellulose fraction, which was attributed to the changes in the O-acetylation level of XyG rather than the XyG content itself. In addition, further analysis revealed that MYB103 positively activated TBL27 expression by directly binding to the TBL27 promoter region, and TBL27 overexpression in the myb103 mutant rescued the Al-sensitive phenotype of the mutant to the wild-type level. Taken together, we conclude that MYB103 acts upstream of TBL27 to positively regulate Al resistance by modulating the O-acetylation of the cell wall XyG.
木葡聚糖 (XyG) 的 O-乙酰化水平的改变似乎通过调节其与 Al 的结合能力来影响拟南芥对 Al 的敏感性。然而,这一过程的转录调控在很大程度上仍然未知。在我们之前的研究中,我们发现负责 XyG 的 O-乙酰化的 TRICHOME BIREFRINGENCE-LIKE27 (TBL27) 的表达在 Al 胁迫下下调。在本研究中,我们表明,R2R3 型转录因子编码基因 MYB103 的表达也受到 Al 暴露的抑制,并与 TBL27 在根和蒴果中表现出共表达模式,表明 MYB103 和 TBL27 之间存在潜在联系。与野生型相比,MYB103 功能丧失导致 Al 敏感性增加,表现在根生长受到更抑制和根 Al 含量升高。此外,我们还检测到根细胞壁和半纤维素部分的 Al 积累增加,这归因于 XyG 的 O-乙酰化水平的变化,而不是 XyG 含量本身。此外,进一步的分析表明,MYB103 通过直接结合 TBL27 启动子区域,正向激活 TBL27 的表达,而在 myb103 突变体中过表达 TBL27 可将突变体的 Al 敏感表型恢复到野生型水平。综上所述,我们得出结论,MYB103 通过调节细胞壁 XyG 的 O-乙酰化,在上游作用于 TBL27,正向调控 Al 抗性。